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Analysis of Deformation and Prediction of Cracks in the Cogging Process for Die Steel at Elevated Temperatures

机译:升高温度下模钢煤矿裂缝变形及预测分析

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摘要

In this paper, an analysis of a three-dimensional state of strain and stress in the case of the hot cogging process of X32CrMoV12-28 die steel with the application of the finite element method is presented. The results of the investigations connected with the simulation of the kinematics of metal flow and thermal phenomena are presented, accompanied by prognosing the formation of ductile fractures in the course of the hot cogging process conducted with the application of three different shape tools and of a proposed deformation criterion of the loss of cohesion. The applied anvils were found to be highly effective in the aspects of distribution of effective strains and stresses, absence of tensile stresses in the axial zones of a forging, and also of a significant thermal stability in the internal layers of a deformed material. The developed course of changes in the deformation of the damage factor in the case of forging in the investigated anvils renders it possible to predict the situation and the phase of deformation in which the loss of cohesion by a deformed material will occur. The comparison between the predicted and the experimental results showed a good agreement.
机译:本文介绍了在X32Crmov12-28模钢的热齿槽热齿钢的情况下,施用有限元法的热捕获过程的三维应变状态和应力的分析。提出了与模拟金属流动和热现象的模拟相关的调查结果,并伴随着在通过应用三种不同形状工具和提出的三种不同形状工具进行的热饮用过程中形成延展性裂缝的形成粘性损失的变形标准。发现应用的砧座在有效菌株和应力分布的方面非常有效,在锻造的轴向区域中不存在拉伸应力,并且在变形材料的内层中也具有显着的热稳定性。在研究的砧座锻造锻造的情况下,损伤因子变形的变化的变化过程使得可以预测通过变形材料损失的变形的情况和变形的阶段。预测和实验结果之间的比较表现出良好的一致性。

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